The effect of conductivity on the spraying of dielectric liquids

D. K. Davies
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引用次数: 1

Abstract

The atomisation of liquids by high electrostatic fields-usually obtained by applying high potentials to sharp electrodes-is a familiar phenomenon. Despite considerable recent research activity, there is a paucity of data relating atomised droplet size to applied potential, liquid flow rate and liquid conductivity, particularly for a multi-ligament spray. An experiment is described in which the spraying characteristics of a liquid with conductivity controlled over several orders of magnitude by adding ethanol to hexane, has been examined. The experimental data obtained are presented and discussed in terms of modern theoretical models. It is concluded that control of liquid conductivity and flow rate together with careful nozzle design offers means for the production of droplets of precise size over a wide range of liquid throughput. These techniques have application in high quality coating, low energy injection systems for chemical reaction and precise solid particle production.
电导率对介质液体喷涂的影响
高静电场对液体的雾化——通常是通过对尖锐电极施加高电位而获得的——是一种常见的现象。尽管最近有大量的研究活动,但有关雾化液滴大小与应用电位、液体流速和液体电导率的数据很少,特别是对于多韧带喷雾。本文描述了一个实验,在该实验中,通过向己烷中加入乙醇,研究了具有电导率控制在几个数量级的液体的喷涂特性。用现代理论模型对实验数据进行了介绍和讨论。结论是,控制液体的导电性和流速,加上精心设计的喷嘴,为在大范围的液体吞吐量上生产精确尺寸的液滴提供了手段。这些技术在高质量的涂层、化学反应的低能量注射系统和精确的固体颗粒生产中都有应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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